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Results: 104
Number of items: 104
  • Njiru, C., Xue, W., De Rouck, S., Alba, J. M., Kant, M. R., Chruszcz, M., Vanholme, B., Dermauw, W., Wybouw, N., & Van Leeuwen, T. (2022). Additional file 2 of Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals [Data set]. Springer Nature. https://doi.org/10.6084/m9.figshare.20003817.v1
  • Njiru, C., Xue, W., De Rouck, S., Alba, J. M., Kant, M. R., Chruszcz, M., Vanholme, B., Dermauw, W., Wybouw, N., & Van Leeuwen, T. (2022). Additional file 13 of Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals [Data set]. Springer Nature. https://doi.org/10.6084/m9.figshare.20003787.v1
  • Njiru, C., Xue, W., De Rouck, S., Alba, J. M., Kant, M. R., Chruszcz, M., Vanholme, B., Dermauw, W., Wybouw, N., & Van Leeuwen, T. (2022). Additional file 1 of Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals [Data set]. Springer Nature. https://doi.org/10.6084/m9.figshare.20003808.v1
  • Njiru, C., Xue, W., De Rouck, S., Alba, J. M., Kant, M. R., Chruszcz, M., Vanholme, B., Dermauw, W., Wybouw, N., & Van Leeuwen, T. (2022). Additional file 9 of Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals [Data set]. Springer Nature. https://doi.org/10.6084/m9.figshare.20003838.v1
  • Njiru, C., Xue, W., De Rouck, S., Alba, J. M., Kant, M. R., Chruszcz, M., Vanholme, B., Dermauw, W., Wybouw, N., & Van Leeuwen, T. (2022). Additional file 10 of Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals [Data set]. Springer Nature. https://doi.org/10.6084/m9.figshare.20003778.v1
  • Njiru, C., Xue, W., De Rouck, S., Alba, J. M., Kant, M. R., Chruszcz, M., Vanholme, B., Dermauw, W., Wybouw, N., & Van Leeuwen, T. (2022). Additional file 6 of Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals [Data set]. Springer Nature. https://doi.org/10.6084/m9.figshare.20003829.v1
  • Villacís Pérez, E., Alba Cano, J., Cotte, J., van Loon, Z., Breeuwer, H., & Van Leeuwen, T. (2022, April 6). Interactions with plant defences isolate sympatric populations of an herbivorous mite_Datasets [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.19501936.v1
  • Open Access
    Villacís Pérez, E. A. (2021). Ecological speciation and adaptive evolution in a herbivorous mite. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Villacis-Perez, E., Snoeck, S., Kurlovs, A. H., Clark, R. M., Breeuwer, J. A. J., & Van Leeuwen, T. (2021). Adaptive divergence and post-zygotic barriers to gene flow between sympatric populations of a herbivorous mite. Communications biology, 4, Article 853. https://doi.org/10.1038/s42003-021-02380-y
  • Villacis Pérez, E. A., Snoeck, S., Kurlovs, A. H., Clark, R. M., Breeuwer, H., & Van Leeuwen, T. (2021, June 1). Juvenile survival of different spider mite genotypes on honeysuckle [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.14706366.v1
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